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Development of remote pipe welding tool for divertor cassettes in JT-60SA

机译:JT-60SA中用于偏滤器盒的远程管道焊接工具的开发

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Remote pipe welding tool accessing from inside of the pipe has been newly developed for JT-60SA. Remote handling (RH) system is necessary for the maintenance and repair of the divertor cassette in JT-60SA. Because the space around the cooling pipe connected with the divertor cassette is very limited, the cooling pipe is to be remotely cut and welded from inside for the maintenance. A laser welding method was employed to perform circumferential welding by rotating the focusing mirror inside the pipe. However, the grooves of connection pipes are not precisely aligned for welding. The most critical issue is therefore to develop a reliable welding tool for pipe connection without a defect such as undercut weld due to a gap caused by angular and axial misalignments of grooves. In addition, an angular misalignment between two pipes due to inclination of pipe has to be taken into account for the positioning of the laser beam during welding. In this paper, the followings are proposed to solve the above issues: (1) Cooling pipe connected with the divertor is machined to have a jut on the edge so as to expand the acceptable welding gap up to 0.5 mm by filling the gap with welded jut. (2) Positioning accuracy of the laser beam for reliable welding is realized to be less than +/- 0.1 mm along the circumferential target for welding by a position control mechanism provided in the tool even in the case of up to angular misalignment of 0.5 between connection pipes. Based on the above proposals, we have achieved robust welding for a large gap up to 0.5 mm as well as the maximum angular misalignment of 0.5 between connection pipes by using this newly developed tool. (C) 2015 Elsevier B.V. All rights reserved.
机译:JT-60SA是新开发的从管道内部访问远程管道焊接工具的工具。远程操纵(RH)系统对于JT-60SA中的分流器暗盒的维护和修理是必要的。由于与分流器盒连接的冷却管周围的空间非常有限,因此需要从内部远程切割和焊接冷却管以进行维护。通过旋转管内的聚焦镜,采用激光焊接法进行周向焊接。但是,连接管的凹槽没有精确对准以进行焊接。因此,最关键的问题是开发一种用于管道连接的可靠的焊接工具,而不会出现由于凹槽的角度和轴向未对准而引起的间隙等缺陷,例如咬边焊。另外,在焊接期间激光束的定位必须考虑由于管道的倾斜而导致的两个管道之间的角度不对准。为解决上述问题,本文提出以下建议:(1)对与分流器连接的冷却管进行机械加工,使其边缘突出,以便通过填充焊接间隙将可接受的焊接间隙扩大到0.5 mm。突出(2)即使在最大角度偏差为0.5°以下的情况下,通过工具所具有的位置控制机构,也能够可靠地进行焊接用激光束的沿着圆周方向的靶的定位精度为+/- 0.1mm以内。连接管道。基于上述建议,使用此新开发的工具,我们实现了坚固的焊接,可焊接的间隙最大可达0.5 mm,连接管之间的最大角度偏差为0.5。 (C)2015 Elsevier B.V.保留所有权利。

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